EP1679061A1 - Stabilisierung der Färbung der Haarkonditionierungsmittel - Google Patents

Stabilisierung der Färbung der Haarkonditionierungsmittel Download PDF

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Publication number
EP1679061A1
EP1679061A1 EP04029774A EP04029774A EP1679061A1 EP 1679061 A1 EP1679061 A1 EP 1679061A1 EP 04029774 A EP04029774 A EP 04029774A EP 04029774 A EP04029774 A EP 04029774A EP 1679061 A1 EP1679061 A1 EP 1679061A1
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Prior art keywords
acid
composition according
composition
concentration
compositions
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EP04029774A
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English (en)
French (fr)
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EP1679061B1 (de
EP1679061B2 (de
Inventor
Michael Molenda
Magali Lateulere
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Kao Germany GmbH
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KPSS Kao Professional Salon Services GmbH
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Application filed by KPSS Kao Professional Salon Services GmbH filed Critical KPSS Kao Professional Salon Services GmbH
Priority to AT04029774T priority Critical patent/ATE365532T1/de
Priority to DE602004007281T priority patent/DE602004007281T2/de
Priority to EP04029774A priority patent/EP1679061B2/de
Priority to US11/301,875 priority patent/US7988955B2/en
Publication of EP1679061A1 publication Critical patent/EP1679061A1/de
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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/30Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
    • A61K8/33Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing oxygen
    • A61K8/35Ketones, e.g. benzophenone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/30Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
    • A61K8/40Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing nitrogen
    • A61K8/44Aminocarboxylic acids or derivatives thereof, e.g. aminocarboxylic acids containing sulfur; Salts; Esters or N-acylated derivatives thereof
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/30Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
    • A61K8/46Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing sulfur
    • A61K8/466Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing sulfur containing sulfonic acid derivatives; Salts
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/30Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
    • A61K8/49Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing heterocyclic compounds
    • A61K8/494Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing heterocyclic compounds with more than one nitrogen as the only hetero atom
    • A61K8/496Triazoles or their condensed derivatives, e.g. benzotriazoles
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61QSPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
    • A61Q17/00Barrier preparations; Preparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
    • A61Q17/04Topical preparations for affording protection against sunlight or other radiation; Topical sun tanning preparations
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61QSPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
    • A61Q5/00Preparations for care of the hair
    • A61Q5/06Preparations for styling the hair, e.g. by temporary shaping or colouring
    • A61Q5/065Preparations for temporary colouring the hair, e.g. direct dyes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61QSPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
    • A61Q5/00Preparations for care of the hair
    • A61Q5/12Preparations containing hair conditioners
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K2800/00Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
    • A61K2800/40Chemical, physico-chemical or functional or structural properties of particular ingredients
    • A61K2800/42Colour properties
    • A61K2800/43Pigments; Dyes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K2800/00Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
    • A61K2800/40Chemical, physico-chemical or functional or structural properties of particular ingredients
    • A61K2800/51Chelating agents

Definitions

  • the present invention is related to stabilization of color of conditioning compositions for hair on aqueous basis, suitable for use after using cleansing compositions
  • Colorful conditioning compositions have become more and more favorable in the cosmetic market.
  • the colors serve for attractive appearance especially for transparent compositions in a transparent packaging material, as well as, from consumer point of view, helps to identify product and may as well communicate to the consumer product benefit.
  • anionic, neutral, cationic and natural dyes or their mixtures are used for coloring the conditioning compositions.
  • Especially preferred ones are the anionic ones.
  • color stabilization is a major subject matter for the formulators of such composition. It has been observed throughout the years that special difficulties exist especially with blue and red dyes.
  • the object of the present invention is to prevent or at least to diminish color fading without visible colour change or disappearing of the liquid conditioning compositions.
  • a color of the conditioning composition comprising at least one dyestuff selected from anionic, cationic, neutral dyes is stabilized when the composition comprises at least one chelating agent and at least one UV absorber.
  • Further object of the invention is the use of combination of at least one chelating agent and at least one UV absorbing agent for stabilization of color of conditioning compositions at least one dyestuff selected from anionic, cationic, neutral dyes for hair.
  • Still further object of the invention is stabilization of color of conditioning compositions for hair comprising at least one dyestuff selected from anionic, cationic, neutral dyes, at least one conditioning agent and at least one dicarboxylic and/or hydroxycarboxylic acid and having a pH value below 4.5, preferably 2 to 4.0 and more preferably 2.8 to 3.8.
  • the chelating agents useful within the frame of the present invention are beta-alanine diacetic acid, aminotrimethylene phosphoric acid, citric acid, ethylendiamine tetra acetic acid, cyclohexanediamine tetraacetic acid, etidronic acid, galactaric acid, galacturonic acid, gluconic acid, glucuronic acid, pentetic acid, phytic acid and any of their sodium potassium salts.
  • those etidronic acid and ethylenediamine tetraacetic acid and their potassium and sodium salts or their mixtures are the preferred ones.
  • Most preferred is the EDTA and its mono, di, tri or tetra sodium or potassium salts or their mixtures.
  • the concentration of chelating agent is in the range of 0.01 to 5%, preferably 0.05 to 4% and more preferably 0.05 to 3% and most preferably 0.05 to 2.5% by weight calculated to the total compositions.
  • the UV filters are those oil and water soluble ones for the purpose of the present invention.
  • anionic and nonionic, oily or oil soluble, UV filters are suitably used in the compositions of the present invention.
  • Suitable UV-absorbing substances are: 4-Aminobenzoic acid and the esters and salts thereof, 2-phenyl benzimidazole-5-sulfonic acid and the alkali and amine salts thereof, 4-dimethyl aminobenzoic acid and the esters and salts thereof, cinnamic acid and the esters and salts thereof, 4-methoxycinnamic acid and the esters and salts thereof, salicylic acid and the esters and salts thereof, 2.4-dihydroxybenzophenone, 2.2'.4.4'-tetrahydroxy- benzophenone, 2-hydroxy-4-methoxybenzophenone and its 5-sulfonic acid or the sodium salt thereof, 2.2'-dihydroxy-4.4'-dimethoxybenzophenone, 2-hydroxy-5-chlorobenzoph
  • compositions of the present invention comprise at least one UV absorbing substance and may comprise more than one when needed.
  • the most preferred UV absorbers are benzotriazolyl dodecyl p-cresol (known with the trade name Tinogard TL), Benzophenone-3 and Benzophenone-4.
  • the amount of the UV-absorber ranges typically from about 0.01 % to 2.5%, preferably from 0.05 % to 2, more preferably 0.05 to 1.5 and most preferably 0.05 to 1% % by weight, calculated to the total composition.
  • the conditioning compositions are colored with anionic, neutral, cationic or natural dyestuffs or their combinations.
  • the suitable anionic dyestuffs are any usable for cosmetic purposes and especially those available for product colouring purposes. Without limiting possibility of using other not listed ones, examples of the suitable anionic dyes are: Acid Black 1, Acid Blue 1, Acid Blue 3, Food Blue 5, Acid Blue 7, Acid Blue 9, Acid Blue 74, Acid Orange 3, Acid Orange 6, Acid Orange 7, Acid Orange 10, Acid Red 1, Acid Red 14, Acid Red 18, Acid Red 27, Acid Red 50, Acid Red 52, Acid Red 73, Acid Red 87, Acid Red 88, Acid Red 92, Acid Red 155, Acid Red 180, Acid Violet 9, Acid Violet 43, Acid Violet 49, Acid Yellow 1, Acid Yellow 23, Acid Yellow 3, Food Yellow No.
  • the dyes used for colouring the composition and not having any dyeing effect on the surface of the object treated with it their concentration is usually quite low and in any case lower than 0.25%, preferably lower than 0.2% and more preferably lower than 0.15% and most preferably lower than 0.1% by weight calculated to the total composition. It should be noted that in the case of dark dyestuffs such as blue, red or any other darker direction the concentration may also be in the ppm range. The concentrations mentioned here are total dyestuff concentration and not refer to the individual dyes.
  • conditioning compositions may also be coloured with cationic dyes. Their substantivity to the negatively charged surfaces because of their cationic nature should be kept in mind when using the dyes. Those dyes are especially used as direct dyes in conditioning and colouring compositions for hair.
  • the conditioning compositions may also be colored with neutral dyes (HC dyes), so called nitro dyes.
  • HC dyes neutral dyes
  • nitro dyes so called nitro dyes.
  • concentration the neutral dyes should preferably be very low.
  • Plant dyestuffs may also be used for coloring liquid cleansing compositions for example henna (red or black), alkanna root, laccaic acid, indigo, logwood powder, madder root and rhubarb powder, etc.
  • anionic, cationic, neutral and plant (natural) dyes are as well used in combination with each other.
  • the concentration of total dyestuffs, one or more and in mixture with any other either anionic, or cationic, or neutral or natural, is lower than 0.25%, preferably lower than 0.2% and more preferably lower than 0.15% and most preferably lower than 0.1 % by weight calculated to the total composition.
  • the composition in any case comprise one or more dyestuffs and the concentration can be as low as 0.00001 % by weight calculated to total composition.
  • anionic dyes are found to be the most suitable and preferred ones.
  • Conditioning compositions of the present invention comprise at least one hair-conditioning compound. Suitable ones are those of cationic compounds, especially cationic polymers and cationic surfactants. Oily substances and non-ionic substances can as well be suitably used as conditioners in the compositions of the present invention.
  • Suitable cationic polymers are those of best known with their CTFA category name Polyquaternium. Typical examples of those Polyquaternium 6, Polyquaternium 7, Polyquaternium 10, Polyquaternium 11, Polyquaternium 16, Polyquaternium 22 and Polyquaternium 28.
  • Quaternium As well those polymers known with their CTFA category name Quaternium are suitable. Those are for example Quaternium-8, Quaternium-14, Quaternium-15, Quaternium-18, Quaternium-22, Quaternium-24, Quaternium-26, Quaternium-27, Quaternium-30, Quaternium-33, Quaternium-53, Quaternium-60, Quaternium-61, Quaternium-72, Quaternium-78, Quaternium-80, Quaternium-81, Quaternium-81, Quaternium-82, Quaternium-83 and Quaternium-84.
  • cationic cellulose type polymers known as Polymer JR type from Amerchol such as Polyquaternium 10 or cationic guar gum known with trade name Jaguar from Rhône-Poulenc and chemically for example Guar hydroxypropyl trimonium chloride, are preferred ones.
  • chitosan and chitin can also be included in the compositions as cationic natural polymers.
  • the most preferred cationic polymers are those of cationic cellulose derivatives, cationic guar gum derivatives, polyquaternium 6 and polyquaternium 7.
  • the cationic polymers also include the quaternized products of graft polymers from organopolysiloxanes and polyethyl oxazolines described in EP-A 524 612 and EP-A 640 643.
  • Typical concentration range for cationic polymers is 0.01 - 5% by weight, preferably 0.01 - 3.5% by weight, more preferably 0.05 - 2.5% and most preferably 0.05 - 1.5% by weight calculated to the total composition.
  • conditioning compositions comprise at least one cationic surfactant as conditioning agent and as well as emulsifier.
  • Suitable cationic surfactants are presented with the general formula where R 1 is a saturated or unsaturated, branched or non-branched alkyl chain with 8-22 C atoms or R 5 CO NH (CH 2 ) n where R 5 is saturated or unsaturated, branched or non-branched alkyl chain with 7-21 C atoms and n has value of 1 - 4, or R 6 CO O (CH 2 ) n where R 6 is saturated or unsaturated, branched or non-branched alkyl chain with 7-21 C atoms and n has value of 1 - 4, and R 2 is H or unsaturated or saturated, branched or non-branched alkyl chain with 1 - 4 C atoms or R 5 CO NH (CH 2 ) n or R 6 CO O (CH 2 ) n where R 5 , R 6 and n are same
  • R 3 and R 14 are H or lower alkyl chain with 1 to 4 carbon atoms, and X is anion such as chloride, bromide, methosulfate.
  • Typical examples of those ingredients are cetyltrimethyl ammonium chloride, steartrimonium chloride, behentrimoinium chloride, stearamidopropyl trimonuim chloride, dioleoylethyl dimethyl ammonium methosulfate, dioleoylethyl hydroxyethylmonium methosulfate.
  • Amido amines may as well be used as a conditioning cationic surfactant in the compositions of the present invention.
  • Typical non-limiting example is stearamidopropylamine known with a trade name Tego Amid S18 from Goldschmidt.
  • Typical concentration range for cationic surfactants is 0.01 - 5% by weight, preferably 0.01 - 3.5% by weight, more preferably 0.05 - 2.5% and most preferably 0.05 - 1.5% by weight calculated to the total composition. Accordingly, the total cationic conditioning compound concentration in the compositions of the present invention varies from 0.01 to 5% by weight, preferably 0.01 to 3.5% by weight, more preferably 0.05 to 2.5% and most preferably 0.05 to 1.5% by weight calculated to the total composition
  • Oily substances are selected from such as silicone oils, either volatile or non-volatile, natural and synthetic oils.
  • silicone oils those can be added to the compositions include dimethicone, amodimethicone (a cationic silicone), dimethiconol, polydimethylsiloxane, DC fluid ranges from Dow Corning, natural oils such as olive oil, almond oil, avocado oil, weizenkeim oil, ricinus oil and the synthetic oils, such as mineral oil, isopropyl myristate, palmitate, stearate and isostearate, oleyl oleate, isocetyl stearate, hexyl laurate, dibutyl adipate, dioctyl adipate, myristyl myristate and oleyl erucate.
  • natural oils such as olive oil, almond oil, avocado oil, weizenkeim oil, ricinus oil
  • synthetic oils such as mineral oil, isopropyl myristate
  • Non-ionic conditioning agents may be polyols such as glycerin, glycol and derivatives, polyethyleneglycoles known with trade names Carbowax PEG from Union Carbide and Polyox WSR range from Amerchol, polyglycerin, polyethyleneglycol mono or di fatty acid esters having general formula R 7 CO (O CH 2 CH 2 ) n OH R 7 CO (O CH 2 CH 2 ) n O OC R 8 where R 7 and R 8 are independent from each other saturated, unsaturated or branched or non-branched alkyl chain with 7 to 21 C atoms and n is typically 2 - 100.
  • polyols such as glycerin, glycol and derivatives, polyethyleneglycoles known with trade names Carbowax PEG from Union Carbide and Polyox WSR range from Amerchol, polyglycerin, polyethyleneglycol mono or di fatty acid esters having general formula R 7 CO (O CH 2 CH 2 ) n OH R 7 CO
  • compositions according to the invention may also comprise further conditioning substances such as protein hydrolyzates and polypeptides, e.g., keratin hydrolyzates, collagen hydrolyzates of the type “Nutrilan R " or elastin hydrolyzates, as well as also in particular plant protein hydrolyzates, optionally, cationized protein hydrolyzates, e.g., "Gluadin R ".
  • protein hydrolyzates and polypeptides e.g., keratin hydrolyzates, collagen hydrolyzates of the type "Nutrilan R " or elastin hydrolyzates
  • plant protein hydrolyzates e.g., cationized protein hydrolyzates, e.g., "Gluadin R ".
  • Further conditioning additives are hair conditioning and/or styling polymers. These may be nonionic polymers, preferably alcohol- and/or water-soluble vinyl pyrrolidone polymers, such as a vinyl pyrrolidone homopolymers or copolymers, in particular with vinyl acetate.
  • Useful vinyl pyrrolidone polymers are, e.g., those known by the trade name "Luviskol®", for example, the homopolymers "Luviskol® K 30, K 60 and K 90", as well as the water-or alcohol-soluble copolymers from vinyl pyrrolidone and vinyl acetate, distributed by BASF AG under the trade name "Luviskol® VA 55 respectively VA 64".
  • nonionic polymers are vinyl pyrrolidone/vinyl acetate/vinyl propionate copolymers such as "Luviskol® VAP 343", vinyl pyrrolidone/(meth)acrylic acid ester copolymers, as well as chitosan derivatives.
  • Amphoteric polymers are found to be useful in conditioning composition of the present invention. They are incorporated alone or in admixture with at least one additional cationic, nonionic or anionic polymer, particularly copolymers of N-octyl acrylamide, (meth)acrylic acid and tert.-butyl aminoethyl methacrylate of the type "Amphomer®”; copolymers from methacryl oylethyl betaine and alkyl methacrylates of the type "Yuka-former®", e.g., the butyl methacrylate copolymer "Yukaformer® Am75”; copolymers from monomers containing carboxyl groups and sulfonic groups, e.g., (meth)acrylic acid and itaconic acid, with monomers such as mono- or dialkyl amino alkyl(meth)acrylates or mono- or dialkyl aminoalkyl (meth)acrylamides containing basic groups, in particular amino
  • Conditioning compositions of the present invention can be in the form of emulsions, solutions, gels and dispersions.
  • the appearance can be either with a transparent or opaque. Transparency of the composition is judged by naked eye in a transparent bottle with a thickness not more than 5 cm.
  • foam is as well suited when packed into a pressurized can or delivered through a pump-foamer (non-aerosol).
  • propellant gas must be added to the formulation.
  • the suitable propellant gasses are carbondioxide, dimethylether and alkanes such as butane, propane, isobutane or their mixtures.
  • the emulsion type of conditioners comprise additionally at least one fatty alcohol of the following formula R 9 -O H where R 9 is a saturated or unsaturated, branched or non-branched fatty acyl chain with 8 - 24 C atoms.
  • Concentration of fatty alcohol is usually less than 20%, preferably less than 15% by weight calculated to total composition.
  • Typical examples to the most useful fatty alcohols are myristyl alcohol, palmityl alcohol, cetyl alcohol, stearyl alcohol, behenyl alcohol and their mixtures.
  • As a mixed fatty alcohol the mostly used one is the cetearyl alcohol as well preferred in the compositions of the present invention.
  • composition of the present invention can comprise surface-active substances as emulsifiers other than cationic surfactants disclosed above especially when an emulsion is preferred.
  • emulsifiers other than cationic surfactants disclosed above especially when an emulsion is preferred.
  • These can be anionic and/or nonionic and/or amphoteric or zwitterionic and/or their mixtures incorporated at a concentration ranging between 0.1 - 10 %, preferably 0.1 - 7.5% and more preferably 0.1 - 5% by weight calculated to the total composition.
  • Preferred emulsifiers are of non-ionic surfactants in addition to the cationic ones.
  • anionic ones are as a rule not preferred and if their presence is desirable because of any reason, those should form the very minor part, as electrostatic interactions with the cationic material especially cationic conditioners either surfactants or polymers can disturb the stability of those conditioners.
  • Zwitterionic ones are also the ones preferred to lesser extent.
  • Suitable preferred nonionic surfactants useful in the compositions according to invention are C 10 -C 22 -fatty alcohol ethoxylates.
  • C 10 -C 22 -fatty alcohol ethers the alkyl polyglycol ethers known by the generic terms "Laureth”, “Myristeth”, “Oleth”, “Ceteth”, “Deceth”, “Steareth” and “Ceteareth” according to the CTFA nomenclature, including addition of the number of ethylene oxide molecules, e.g., "Laureth-16":
  • nonionic surfactants are alkyl polyglucosides of the general formula R 10 -O-(R 11 O) n -Z x , wherein R 10 is an alkyl group with 8 to 18 carbon atoms, R 11 is an ethylene or propylene group, Z is a saccharide group with 5 to 6 carbon atoms, n is a number from 0 to 10 and x is a number between 1 and 5.
  • nonionic surfactants are, for example, long-chain fatty acid mono- and dialkanolamides, such as coco fatty acid monoethanolamide and myristic fatty acid monoethanolamide.
  • nonionic surfactants are, for example, the various sorbitan esters, such as polyethylene glycol sorbitan stearic acid ester, fatty acid polyglycol esters or polycondensates of ethyleneoxide and propyleneoxide, as they are on the market, for example, under the trade name "Pluronics R ", as well as fatty alcohol ethoxylates.
  • sorbitan esters such as polyethylene glycol sorbitan stearic acid ester, fatty acid polyglycol esters or polycondensates of ethyleneoxide and propyleneoxide, as they are on the market, for example, under the trade name "Pluronics R ", as well as fatty alcohol ethoxylates.
  • amineoxides are state of the art, for example C 12 -C 18 - alkyl dimethyl amineoxides such as lauryl dimethyl amineoxide, C 12 -C 18 - alkyl amidopropyl or -ethyl amineoxides, C 12 -C 18 -alkyl di(hydroxyethyl) or (hydroxypropyl) amineoxides, or also amineoxides with ethyleneoxide and/or propyleneoxide groups in the alkyl chain.
  • Such amineoxides are on the market, for example, under the trade names "Ammonyx®", "Aromox®” or "Genaminox®”.
  • compositions according to the invention can also contain amphoteric or zwitterionic surfactants.
  • amphoteric or zwitterionic surfactants Useful as such are in particular the various known betaines such as alkyl betaines, fatty acid amidoalkyl betaines and sulfobetaines, for example, lauryl hydroxysulfobetaine; long-chain alkyl amino acids, such as cocoaminoacetate, cocoaminopropionate and sodium cocoamphopropionate and -acetate have also proven suitable.
  • Anionic surfactants are as a rule preferred to a lesser extend. Some of them are to mention those of sulfate, sulfonate, carboxylate and alkyl phosphate types. Examples are the known C 10 -C 18 -alkyl sulfates, and in particular the respective ether sulfates, for example, C 12 -C 14 -alkyl ether sulfate, lauryl ether sulfate, especially with 1 to 4 ethylene oxide groups in the molecule, monoglyceride (ether) sulfates, fatty acid amide sulfates obtained by ethoxylation and subsequent sulfatation of fatty acid alkanolamides, and the alkali salts thereof, as well as the salts of long-chain mono- and dialkyl phosphates.
  • ether sulfates for example, C 12 -C 14 -alkyl ether sulfate, lauryl ether sulfate, especially
  • Additional anionic surfactants are ⁇ -olefin sulfonates or the salts thereof, and in particular alkali salts of sulfosuccinic acid semiesters, for example, the disodium salt of monooctyl sulfosuccinate and alkali salts of long-chain monoalkyl ethoxysulfosuccinates.
  • anionic surfactants are also C 8 -C 22 -acyl aminocarboxylic acids or the water-soluble salts thereof.
  • N-lauroyl glutamate in particular as sodium salt
  • N-lauroyl sarcosinate N-C 12 -C 18 -acyl asparaginic acid
  • N-myristoyl sarcosinate N-oleoyl sarcosinate
  • N-lauroyl methylalanine N-lauroyl lysine
  • N-lauroyl aminopropyl glycine preferably in form of the water-soluble alkali or ammonium, in particular the sodium salts thereof, preferably in admixture with the above-named anionic surfactants.
  • the pH of the compositions according to the present invention is below 4.5 and preferably in the range of 2.0 to 4.0, more preferably 2.5 to 4.0, most preferably 2.5 to 3.80.
  • the pH of the compositions can be adjusted with any organic and/or inorganic acids or their mixture. Some of them to mention are phosphoric acid, hydrochloric acid as the inorganic ones and to the organic acids the well known citric acid.
  • the best hair conditioning effects are observed when the carboxylic acids and especially those of with hydroxycarboxylic acids and/or dicarboxylic acids are included into the composition for adjusting pH.
  • the pH of the compositions is adjusted with hydroxycarboxylic acids and/or dicarboxylic acids.
  • other organic and inorganic acids may as well be used to adjust pH to the required value.
  • hydroxycarboxylic acids useful in the compositions of the present invention are lactic acid, glycolic acid, hydroxyacrylic acid, glyceric acid, malic acid and tartaric acid and of the dicarboxylic acids are malonic acid, succinic acid, glutaric acid, adipic acid, maleic acid, fumaric acid and phtalic acid.
  • compositions according to present invention comprise preferably at least one hydroxycarboxylic acid and/or dicarboxylic acid. Combinations of two or more hydroxycarboxylic acids and/or dicarboxylic acids are also within the scope of the invention. It should be noted that mixture of two or more hydroxycarboxylic acid and dicarboxylic acid comprising compositions are also within the scope of the present invention. Especially preferred hydroxycarboxylic acids are the lactic and malic acids. Malic acid is also a dicarboxylic acid. The most preferred hydroxycarboxylic acid and/or dicarboxylic acid is the malic acid.
  • Total hydroxycarboxylic acid and/or dicarboxylic acid concentration in the composition of the present invention varies in the range form 0.1 to 5% by weight, preferably 0.25 to 3% by weight, more preferably 0.5 to 3% by weight and most preferably 0.75 to 3% by weight.
  • the compositions of the present invention comprise at least 0.5% malic acid.
  • compositions can comprise organic solvents such as ethanol, propanol, isopropanol, benzyl alcohol, benzyloxyethanol, ethoxydiglycol, alkylene carbonates such as ethylene carbonate and propylene carbonate, phenoxyethanol, butanol, isobutanol, cyclohexane, cyclohexanol, hexyleneglycol, ethylenecarbonate, propyleneglycol, poypropyleneglycols, ethyleneglycol monoethylether, ethylene glycol monobutyl ether, ethylene glycol monophenyl ether, 1-phenylethylalcohol, 2-phenylethylalcohol, o-methoxyphenol.
  • organic solvents such as ethanol, propanol, isopropanol, benzyl alcohol, benzyloxyethanol, ethoxydiglycol
  • alkylene carbonates such as ethylene carbonate and propylene carbonate,
  • compositions should not exceed 10% by weight, preferably in the range of 0.1 to 7.5%, more preferably 0.2 to 5% by weight calculated to total composition.
  • compositions dispensed form an aerosol and/or pump foamer should preferably be very liquid, i.e. viscosity values not more than approximately 500 mPa.s measured as given above are not appropriate.
  • compositions of the present invention are used especially after shampooing and can be applied to hair either as a leave-in or as a rinse off compositions.
  • compositions of the present invention can comprise all substances customarily found in hair conditioning preparations.
  • Examples of such substances are natural plant extracts, preservatives, fragrances, moisturizers, etc.
  • Natural plant extracts are incorporated usually in an amount of about 0.01 % to about 10 %, preferably 0.05 % to 7.5 %, in particular 0.1 % to 5 % by weight, calculated as dry residue thereof to the total composition.
  • Suitable aqueous e.g.
  • alcoholic or hydro-alcoholic plant extracts known per se are in particular extracts from leaves, fruits, blossoms, roots, rinds or stems of aloe, pineapple, artichoke, arnica, avocado, valerian, bamboo, henbane, birch, stinging nettle, echinacea, ivy, wild angelica, gentian, ferns, pine needles, silver weed, ginseng, broom, oat, rose hip, hamamelis, hay flowers, elderberry, hop, coltsfoot, currants, chamomile, carrots, chestnuts, clover, burr root, cocoanut, cornflower, lime blossom, lily of the valley, marine algae, balm, mistletoe, passion flower, ratanhia, marigold, rosemary, horse chestnut, pink hawthorn, sage, horsetail, yarrow, primrose, nettle, thyme, walnut, wine leaves, white hawthorn, etc.
  • Suitable trade products are, for example, the various "Extrapon®” products, “Herbasol R”, “Sedaplant R” and “Hexaplant R”. Extracts and the preparation thereof are also described in “Hagers Handbuch der pharmazeuticiantechnik”, 4 th Ed..
  • the moisturizing agents are selected from panthenol, polyols, such as glycerol, polyethylene glycols with molecular weight 200 to 20,000.
  • the moisturizing ingredients can be included in the conditioner compositions at a concentration range of 0.01 - 2.5% by weight calculated to the total composition.
  • UV light and sun light stability was determined in a polyethylene terphtalate (PET-P) bottle with a weight of 24.5 ⁇ 0.5 g per 200 ml filling volume by using a UV light irradiation equipment named Sunset Machine model Sunset CPS supplied by Atlas Material Testing Solution. Light emission energy of the equipment is 765 W/m 2 ⁇ 10%.
  • the bottles used do not contain any UV absorbing substance. Temperature during the measurement was around 46°C ⁇ 2°C. Bottle used had a volume of around 200 ml and a surface area of 0.0108 m 2 is usually exposed to UV light for 30 h which corresponds to 892 kJ.
  • the bottles were exposed to direct sunlight on the roof of a building and using a 1 cm 2 photocell the produced electro energy is measured in Watt.
  • a computing device (counter) -purchased from Kipp & Zonen - Radiation indicator CC20 ⁇ reported on the display the energy exposure of the bottled compositions in Wh/m2.
  • the length of the exposure was set at the value 30.000 Wh/m 2 which is approximately equal to the 892 kJ as in the case of UV light stability measurement. During the tests the same bottles were used as mention in the UV test part.
  • hair conditioning composition was used throughout the experimental work for determination of color stability.
  • Hair conditioning composition Cetylstearylalcohol 5.0 (% by weight) Stearyltrimethylammoniumchlorid 0.7 Dioleoylethyl dimethyl ammonium methosulfate 0.5 Silicone oil (Dimethicone) 0.6 Isopropylmyristate 0.4 Panthenol 0.2 Benzylalcoholol 1.0 Propyleneglycol 0.8 Lactic acid 0.2 Fragrance, preservative q.s. Malic acid 1.0 Sodium hydroxide q.s pH 3.3 Wasser ad 100.0
  • Acid violet 43 was used at a concentration of 0.0028% by weight which was introduced into the composition from a stock solution in water containing 0.1 % acid red 52.
  • the conditioning composition obtained were exposed to UV light as described above in a 200 ml PET-P bottle. Before and after 30 hrs of exposure, the color measurements, L, a and b values, were carried out with the color measuring device mentioned above. From the L, a and b data ⁇ E values are calculated using the known formula.
  • Example 1 The same as described under Example 1 was carried out using Basic red 51 a cationic dyestuff at a concentration of 0.0012% by weight. Same as in the Example 1 the conditioning compositions were exposed to UV light as described above in a 200 ml PET-P bottle. The compositions tested were:

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EP04029774A 2004-12-16 2004-12-16 Stabilisierung der Färbung der Haarkonditionierungsmittel Not-in-force EP1679061B2 (de)

Priority Applications (4)

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AT04029774T ATE365532T1 (de) 2004-12-16 2004-12-16 Stabilisierung der färbung der haarkonditionierungsmittel
DE602004007281T DE602004007281T2 (de) 2004-12-16 2004-12-16 Stabilisierung der Färbung der Haarkonditionierungsmittel
EP04029774A EP1679061B2 (de) 2004-12-16 2004-12-16 Stabilisierung der Färbung der Haarkonditionierungsmittel
US11/301,875 US7988955B2 (en) 2004-12-16 2005-12-13 Conditioning composition

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1972323A3 (de) * 2007-03-23 2014-04-23 Henkel AG & Co. KGaA Haarfärbemittel

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US20100130460A1 (en) * 2005-12-09 2010-05-27 Nycomed Us Inc. Topical glucocorticosteroid formulations
CN101678216A (zh) 2007-06-15 2010-03-24 宝洁公司 包含胺型阳离子表面活性剂和直接染料的毛发调理组合物
EP2355904B1 (de) * 2008-12-12 2017-01-04 The Procter and Gamble Company Haarpflegezusammensetzung mit kationischem tensidsystem und direktziehendem farbstoff
DE102009048978A1 (de) 2009-10-09 2011-04-14 Beiersdorf Ag Gilbfreie Haarbehandlungsmittel mit Aminosilikonen
CN103002952B (zh) * 2009-10-29 2017-02-15 宝洁公司 包含阳离子表面活性剂体系、直接染料和非离子增稠剂的毛发调理组合物
US20230096297A1 (en) * 2021-08-13 2023-03-30 L'oreal Hair treatment compositions providing brightening and shine

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US5843193A (en) * 1997-03-18 1998-12-01 Revlon Consumer Products Corporation Hair dye compositions and process
WO2003053386A1 (en) * 2001-12-21 2003-07-03 Unilever Plc Enhanced colour deposition for hair with sequestering agents

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US5656280A (en) * 1994-12-06 1997-08-12 Helene Curtis, Inc. Water-in-oil-in-water compositions
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DE602004032037D1 (de) * 2004-11-09 2011-05-12 Kpss Kao Gmbh Konditionierende und Färbemittel fur die Haare
ATE503529T1 (de) * 2004-11-09 2011-04-15 Kpss Kao Gmbh Shampoozusammensetzung mit farberhöhung
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US5843193A (en) * 1997-03-18 1998-12-01 Revlon Consumer Products Corporation Hair dye compositions and process
WO2003053386A1 (en) * 2001-12-21 2003-07-03 Unilever Plc Enhanced colour deposition for hair with sequestering agents

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EP1679061B1 (de) 2007-06-27
US7988955B2 (en) 2011-08-02
DE602004007281T2 (de) 2008-02-28
ATE365532T1 (de) 2007-07-15
DE602004007281D1 (de) 2007-08-09
EP1679061B2 (de) 2011-04-27
US20060130247A1 (en) 2006-06-22

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